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首页> 外文期刊>Advances in Mechanical Engineering >Casing failure mechanism during volume fracturing: A case study of shale gas well:
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Casing failure mechanism during volume fracturing: A case study of shale gas well:

机译:体积压裂过程中的套管破坏机理:以页岩气井为例:

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A large number of casing failures occur during the volume fracturing operation of shale gas, making normal completion stimulations impossible. To solve this problem, rock mechanical experiments and numerical simulation experiments are carried out in this article. It is found that the macroscopic rock mechanical strength reduces most when the crack angle of fissured rock in Longmaxi Formation is 45°, and it reduces stably when the number of cracks increases to 8. The elasticity modulus ratio, yield strength ratio, and compressive strength ratio are 0.70, 0.71, and 0.68, respectively, based on which this article establishes the finite element model for shale gas well X201. Then, the secondary development realizes the dynamic adjustment of the rock mechanical properties during the fracturing. The correctness of method and model in the article is verified through comparing the simulated calculation of casing deformation and the field multi-arm caliper logging data. The casing failure mechanism is revealed, pr...
机译:页岩气的体积压裂作业中发生大量套管故障,无法正常完成完井。为了解决这个问题,本文进行了岩石力学实验和数值模拟实验。研究发现,龙马溪组裂隙岩的裂隙角度为45°时,宏观岩石力学强度降低最大;裂隙数增加到8时,宏观力学强度稳定降低。弹性模量比,屈服强度比和抗压强度比率分别为0.70、0.71和0.68,在此基础上建立了页岩气井X201的有限元模型。然后,二次开发实现了压裂过程中岩石力学性能的动态调节。通过比较套管变形的模拟计算结果和现场多臂卡尺测井数据,验证了本文方法和模型的正确性。揭示了套管失效机理,以...

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